Genotoxic exposure: novel cause of selection for a functional ΔN-p53 isoform

Authors
  • J.P.M. Melis
  • E.M. Hoogervorst
  • C.T.M. van Oostrom
  • E. Zwart
  • T.M. Breit
  • J.L.A. Pennings
  • A. de Vries
  • H. van Steeg
Publication date 2011
Journal Oncogene
Volume | Issue number 30 | 15
Pages (from-to) 1764-1772
Organisations
  • Faculty of Science (FNWI) - Swammerdam Institute for Life Sciences (SILS)
Abstract
The p53 gene is frequently mutated in cancers and it is vital for cell cycle control, homeostasis and carcinogenesis. We describe a novel p53 mutational spectrum, different to those generally observed in human and murine tumors. Our study shows a high prevalence of nonsense mutations in the p53 N terminus of 2-acetylaminofluorene (2-AAF)-induced urinary bladder tumors. These nonsense mutations forced downstream translation initiation at codon 41 of Trp53, resulting in the aberrant expression of the p53 isoform ΔN-p53 (or p44). We propose a novel mechanism for the origination and the selection for this isoform. We show that chemical exposure can act as a novel cause of selection for this truncated protein. In addition, our data suggest that the occurrence of ΔN-p53 accounts, at least in mice, for a cancer phenotype. We also show that gene expression profiles of embryonic stem (ES) cells carrying the ΔN-p53 isoform in a p53-null background are divergent from p53 knockout ES cells, and therefore postulate that ΔN-p53 itself has functional transcriptional properties.
Document type Article
Language English
Published at https://doi.org/10.1038/onc.2010.552
Permalink to this page
Back